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264 lines
7.5 KiB
C
264 lines
7.5 KiB
C
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/*
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* The contents of this file are subject to the Mozilla Public
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* License Version 1.1 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS
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* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
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* implied. See the License for the specific language governing
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* rights and limitations under the License.
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*
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* The Original Code is MPEG4IP.
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*
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* The Initial Developer of the Original Code is Cisco Systems Inc.
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* Portions created by Cisco Systems Inc. are
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* Copyright (C) Cisco Systems Inc. 2001 - 2004. All Rights Reserved.
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*
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* 3GPP features implementation is based on 3GPP's TS26.234-v5.60,
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* and was contributed by Ximpo Group Ltd.
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*
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* Portions created by Ximpo Group Ltd. are
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* Copyright (C) Ximpo Group Ltd. 2003, 2004. All Rights Reserved.
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*
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* Contributor(s):
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* Dave Mackie dmackie@cisco.com
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* Ximpo Group Ltd. mp4v2@ximpo.com
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*/
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#ifndef __MP4_TRACK_INCLUDED__
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#define __MP4_TRACK_INCLUDED__
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#include "mp4property.h"
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// forward declarations
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class MP4File;
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class MP4Atom;
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class MP4Property;
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class MP4StringProperty;
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class MP4Track {
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public:
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MP4Track(MP4File* pFile, MP4Atom* pTrakAtom);
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virtual ~MP4Track();
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MP4TrackId GetId() {
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return m_trackId;
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}
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const char* GetType();
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void SetType(const char* type);
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MP4File* GetFile() {
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return m_pFile;
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}
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MP4Atom* GetTrakAtom() {
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return m_pTrakAtom;
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}
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void ReadSample(
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// input parameters
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MP4SampleId sampleId,
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// output parameters
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u_int8_t** ppBytes,
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u_int32_t* pNumBytes,
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MP4Timestamp* pStartTime = NULL,
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MP4Duration* pDuration = NULL,
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MP4Duration* pRenderingOffset = NULL,
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bool* pIsSyncSample = NULL);
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void WriteSample(
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const u_int8_t* pBytes,
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u_int32_t numBytes,
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MP4Duration duration = 0,
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MP4Duration renderingOffset = 0,
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bool isSyncSample = true);
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virtual void FinishWrite();
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u_int64_t GetDuration(); // in track timeScale units
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u_int32_t GetTimeScale();
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u_int32_t GetNumberOfSamples();
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u_int32_t GetSampleSize(MP4SampleId sampleId);
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u_int32_t GetMaxSampleSize();
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u_int64_t GetTotalOfSampleSizes();
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u_int32_t GetAvgBitrate(); // in bps
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u_int32_t GetMaxBitrate(); // in bps
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MP4Duration GetFixedSampleDuration();
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void SetFixedSampleDuration(MP4Duration duration);
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void GetSampleTimes(MP4SampleId sampleId,
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MP4Timestamp* pStartTime, MP4Duration* pDuration);
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bool IsSyncSample(MP4SampleId sampleId);
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MP4SampleId GetSampleIdFromTime(
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MP4Timestamp when,
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bool wantSyncSample = false,
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bool rewind = false);
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MP4ChunkId GetChunkIdFromTime(MP4Timestamp when);
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MP4Duration GetSampleRenderingOffset(MP4SampleId sampleId);
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void SetSampleRenderingOffset(MP4SampleId sampleId,
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MP4Duration renderingOffset);
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MP4EditId AddEdit(
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MP4EditId editId = MP4_INVALID_EDIT_ID);
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void DeleteEdit(
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MP4EditId editId);
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MP4Timestamp GetEditStart(
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MP4EditId editId);
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MP4Timestamp GetEditTotalDuration(
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MP4EditId editId);
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MP4SampleId GetSampleIdFromEditTime(
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MP4Timestamp editWhen,
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MP4Timestamp* pStartTime = NULL,
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MP4Duration* pDuration = NULL);
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// special operation for use during hint track packet assembly
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void ReadSampleFragment(
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MP4SampleId sampleId,
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u_int32_t sampleOffset,
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u_int16_t sampleLength,
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u_int8_t* pDest);
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// special operations for use during optimization
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u_int32_t GetNumberOfChunks();
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MP4Timestamp GetChunkTime(MP4ChunkId chunkId);
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void ReadChunk(MP4ChunkId chunkId,
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u_int8_t** ppChunk, u_int32_t* pChunkSize,
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MP4Timestamp* pStartTime = NULL,
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MP4Duration* pDuration = NULL);
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void RewriteChunk(MP4ChunkId chunkId,
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u_int8_t* pChunk, u_int32_t chunkSize);
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protected:
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bool InitEditListProperties();
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FILE* GetSampleFile(MP4SampleId sampleId);
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u_int64_t GetSampleFileOffset(MP4SampleId sampleId);
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u_int32_t GetSampleStscIndex(MP4SampleId sampleId);
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u_int32_t GetChunkStscIndex(MP4ChunkId chunkId);
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u_int32_t GetChunkSize(MP4ChunkId chunkId);
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u_int32_t GetSampleCttsIndex(MP4SampleId sampleId,
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MP4SampleId* pFirstSampleId = NULL);
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MP4SampleId GetNextSyncSample(MP4SampleId sampleId);
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MP4SampleId GetSyncSample(MP4SampleId sampleId, bool rewind = false);
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void UpdateSampleSizes(MP4SampleId sampleId,
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u_int32_t numBytes);
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bool IsChunkFull(MP4SampleId sampleId);
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void UpdateSampleToChunk(MP4SampleId sampleId,
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MP4ChunkId chunkId, u_int32_t samplesPerChunk);
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void UpdateChunkOffsets(u_int64_t chunkOffset);
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void UpdateSampleTimes(MP4Duration duration);
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void UpdateRenderingOffsets(MP4SampleId sampleId,
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MP4Duration renderingOffset);
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void UpdateSyncSamples(MP4SampleId sampleId,
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bool isSyncSample);
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MP4Atom* AddAtom(char* parentName, char* childName);
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void UpdateDurations(MP4Duration duration);
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MP4Duration ToMovieDuration(MP4Duration trackDuration);
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void UpdateModificationTimes();
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void WriteChunkBuffer();
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void CalculateBytesPerSample();
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protected:
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MP4File* m_pFile;
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MP4Atom* m_pTrakAtom; // moov.trak[]
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MP4TrackId m_trackId; // moov.trak[].tkhd.trackId
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MP4StringProperty* m_pTypeProperty; // moov.trak[].mdia.hdlr.handlerType
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u_int32_t m_lastStsdIndex;
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FILE* m_lastSampleFile;
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// for efficient construction of hint track packets
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MP4SampleId m_cachedReadSampleId;
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u_int8_t* m_pCachedReadSample;
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u_int32_t m_cachedReadSampleSize;
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// for writing
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MP4SampleId m_writeSampleId;
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MP4Duration m_fixedSampleDuration;
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u_int8_t* m_pChunkBuffer;
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u_int32_t m_chunkBufferSize;
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u_int32_t m_chunkSamples;
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MP4Duration m_chunkDuration;
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// controls for chunking
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u_int32_t m_samplesPerChunk;
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MP4Duration m_durationPerChunk;
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u_int32_t m_bytesPerSample;
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// controls for AMR chunking
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int m_isAmr;
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u_int8_t m_curMode;
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MP4Integer32Property* m_pTimeScaleProperty;
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MP4IntegerProperty* m_pTrackDurationProperty; // 32 or 64 bits
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MP4IntegerProperty* m_pMediaDurationProperty; // 32 or 64 bits
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MP4IntegerProperty* m_pTrackModificationProperty; // 32 or 64 bits
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MP4IntegerProperty* m_pMediaModificationProperty; // 32 or 64 bits
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MP4Integer32Property* m_pStszFixedSampleSizeProperty;
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MP4Integer32Property* m_pStszSampleCountProperty;
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void SampleSizePropertyAddValue(uint32_t bytes);
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uint8_t m_stsz_sample_bits;
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bool m_have_stz2_4bit_sample;
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uint8_t m_stz2_4bit_sample_value;
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MP4IntegerProperty* m_pStszSampleSizeProperty;
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MP4Integer32Property* m_pStscCountProperty;
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MP4Integer32Property* m_pStscFirstChunkProperty;
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MP4Integer32Property* m_pStscSamplesPerChunkProperty;
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MP4Integer32Property* m_pStscSampleDescrIndexProperty;
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MP4Integer32Property* m_pStscFirstSampleProperty;
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MP4Integer32Property* m_pChunkCountProperty;
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MP4IntegerProperty* m_pChunkOffsetProperty; // 32 or 64 bits
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MP4Integer32Property* m_pSttsCountProperty;
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MP4Integer32Property* m_pSttsSampleCountProperty;
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MP4Integer32Property* m_pSttsSampleDeltaProperty;
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// for improve sequental timestamp index access
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u_int32_t m_cachedSttsIndex;
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MP4SampleId m_cachedSttsSid;
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MP4Timestamp m_cachedSttsElapsed;
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MP4Integer32Property* m_pCttsCountProperty;
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MP4Integer32Property* m_pCttsSampleCountProperty;
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MP4Integer32Property* m_pCttsSampleOffsetProperty;
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MP4Integer32Property* m_pStssCountProperty;
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MP4Integer32Property* m_pStssSampleProperty;
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MP4Integer32Property* m_pElstCountProperty;
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MP4IntegerProperty* m_pElstMediaTimeProperty; // 32 or 64 bits
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MP4IntegerProperty* m_pElstDurationProperty; // 32 or 64 bits
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MP4Integer16Property* m_pElstRateProperty;
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MP4Integer16Property* m_pElstReservedProperty;
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};
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MP4ARRAY_DECL(MP4Track, MP4Track*);
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#endif /* __MP4_TRACK_INCLUDED__ */
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